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PMP5660.1 Texas Instruments Multi-Transformer 2x25V (390V@192mA) visit Texas Instruments
PMP5660.2 Texas Instruments Multi-Transformer 2x25V (50V@700mA) visit Texas Instruments
PMP5660 Texas Instruments Multi-Transformer 2x25V?50V@700mA, 390V@192mA visit Texas Instruments
PMP5412 Texas Instruments Transformer-less, non-isolated AC to DC visit Texas Instruments
ISO1176TDWR Texas Instruments Isolated ProfiBus Transceiver with integrated transformer driver 16-SOIC -40 to 85 visit Texas Instruments
ISO3086TDW Texas Instruments Isolated 485 Transceiver with integrated transformer driver 16-SOIC -40 to 85 visit Texas Instruments Buy

transformer e19

Catalog Datasheet MFG & Type PDF Document Tags

3DD5023

Abstract: E16 10 pin bobbin transformers selected from simple lookup tables and transformer construction is explained. Other design guides explain , .6 Transformer Design , section 3.3.8 See section 3.4 See section 3.5 See section 3.6 Transformer core Table 1: RDFC , target operating frequency. Requires careful transformer design for high power applications Design , Forward Converter 3.3 Transformer Design Design of RDFC transformers is key for achieving optimum
Cambridge Semiconductor
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smps with tl431 and pc817

Abstract: Viper22 application STMicroelectronics 1A Voltage Regulator 6/8 AN2097 - APPLICATION NOTE 3.3 Transformer Parameters The transformer used in this SMPS for airconditioner application is wound in E19 core. The electrical, mechanical and winding specifications are given in table 4 and figure 8. Table 4. Transformer parameters Core size: E19/8/5 Primary Winding Primary Inductance 3.0mH Turns 133 Coil 0.25mm , Transformer (Non-Ideal) U1 VIPer22A STMicroelectronics Off Line SMPS U2 PC817 Photocoupler
STMicroelectronics
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smps with tl431 and pc817 Viper22 application transformer e19 VIPer22A circuit diagram schematic SMPS 12V 10A viper22a transformer design

sporlan MKC-2

Abstract: sporlan xrn , W14, B19, E19, W19, B25, E25, W25, B33, E33, E34, E42 series normally closed solenoid valves and the , , W14, OB14, OE14 XRM B19, E19, W19, OB19, OE19 XPO B25, E25, W25 OB25, OE25 B33 E34 OB33 , , B9, E9*, B10, E10, B14, E14, W14, B19, E19, W19, B25, E25, W25, Series & Types MA5A, MA17A Solenoid , Protector TRANSFORMER SELECTION COIL KIT 120v/50-60c 240v/50-60c Current Amperes Current , . Fluid or gas temperatures greater than 240°F, while the valve ambient is 120°F. Transformer Rating
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OLDR-20 sporlan MKC-2 sporlan xrn MKC2 two way solenoid valve circuit diagram MKC1 WIRING transformer e33 DDR-20 OLDR-15 LDR-15 LDR-20 SD-114

E19 CORE TRANSFORMER

Abstract: 50CS400 selection of the ferrite core type for a specific transformer depends on the design parameters and the , E10 10.3 9.6 10.2 E13 14.2 10.3 16.2 E16 17.8 12.1 20 E19 19.9 , +0.1 0 2.5 7.5 2.54 3.35 0.9 E13 11.3 8 1.3 +0.1 0 8.8 E16 E19 , COIL Air Cores Coil Antennas Solenoids Electromagnets Encapsulated transformer Insulation Class: B Use vacuum potting machine Withstand voltage level: AC 4KV to AC25KV. SMD transformer SMD
Tianjin Huigao Magnetics
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ETD54 EI114 50CS400 E19 CORE TRANSFORMER transformer ETD34 design CORE N67 ETD49 E55 ferrite core FERRITE TRANSFORMER etd34 P11/7 P14/8 EFD15 ETD29 EFD20 ETD34

transformer e19

Abstract: 1x36 -7 10, 12, 14, or 16 Bit ± 1 0 'to ±2' +1 LSB 3.2 to 800 rps E-19 RDC-19220 Series SD , SDC-630/632/634 series. Industry standard, low profile (0.4") modular con verters. Feature transformer , . Feature transformer isolation, and are available with various reference input and signal input options , . Transformer isolated, broadband 47 Hz to 3000 Hz. All common inputs. 1X, 18X two-speed S/D. Transformer
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1x36 e19 transformer 362t SD14550 1x64 HSDC-8915 DC-19200 SD-14550 SD-14590/91/92 SDC-361 SDC-362

230v 5v 2A 10W schematic

Abstract: E1930 shown in figure 1. 2. The transformer is suited to deliver 5V / 750mA output power. 3. The , Dissipated Power VIPer100 1.18W 1N5822 0.3W Transformer (estimated) 0.4W Ptot 1.88W , the transformer. Paragraph 4.3 gives a good example of what can be achieved in this way. The , current of about 5A with the original schematics. It is clear that the transformer and the output diode , . Another transformer has been tried, with a power capability of 30W. Pretty good results are obtained
STMicroelectronics
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230v 5v 2A 10W schematic E1930 viper100 flyback transformer Schaffner "it 331" VIPER 26A application notes BZX55C10V

RDC-19200

Abstract: transformer e19 ) EL (tn a b le bits 9-16) S (Control Transformer) BW (Bandwidth) Resolution Control 10 Bit 12 Bit 14 , Control Transformer, Logic 1 for normal tracking. Logic 1 = High BW (530 Hz); Logic0 - Low BW (130 Hz) B , REF E E-19 QQQ ILC DATA DEVICE CORPORATION«_ _ RDC-19200 MONOBRID* SERIES D im en sio
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rdc19202 RDC19200 10VDC ROC-19200 RDC-1920X-30 RDC-19202 RDC-19200-300
Abstract: isolation barrier can be bridged by an inexpensive Ethernet (or other) transformer to achieve , lower voltage isolation. DC1079A shows both transformer and capacitor techniques. Separate supplies , GND_C to GND_D, EPF8119S Transformer Coupling 100 1500 VRMS Maximum I2C Clock DC1079A-A , ) across VCC_B and GND_B. 1500VRMS Isolation with Transformer Coupling (Figure 3): 1. Connect first , V2 3V TO 5.5V Figure 3. DC1079A Setup for High Voltage Isolation and Transformer Coupling Linear Technology
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DC1079A-A/DC1079A-B LTC4310-1/LTC4310-2 LTC4310

E47 transformer

Abstract: C65 004 , C9, C11, C13, C14, C15, C16, C19, D5, D6, D7, D9, D11, D13, D19, E3, E19, F19, J3, J4, L3, L4, N3 , implementation describes either pin re-assignments, removal of negative logic transformer or description of , FGPA or µC Output Negative Logic Transformer ADC 100 nF 10 nF 100 nF FGPA or µC Output , Output Negative Logic Transformer ADC 100 nF VCC 100 nF 10 nF B/GB FGPA or µC , Electrical Schematic for embedded application with microcontroller or FPGA Negative Logic Transformer
Analog Devices
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AD9430 E47 transformer C65 004 outline of the heat slug for JEDEC AD9411 AD9430-170 12-BIT MS-026-AED-HD 100-L SV-100-1 AD9430BSV-170

E47 transformer

Abstract: CONTROL » TRANSFORMER Q AIN>-; - DEMODULATOR - 1 » BW VCO U 5 VEL J = U PROG w ill V E l , Device Corporation. E-19 C O R P O R A T IO N ! RDC-19200 MONOBRID® SERIES VALUE 10, 12, 14 or , Loading INH (Inhibit) EM (Enable bits 1-8) EL (Enable bits 9-16) S (Control Transformer) BW (Bandwidth , enables, data valid within 150 ns. Logic 1 high Z within 100 ns Logic 0 for control Transformer, Logic 1 , (530 Hz); logic 0 for low BW (130 Hz). Control Transformer Set. Logic 1 for normal tracking; logic 0
Analog Devices
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AD9430BSVZ-170 AD9430BSV-210 AD9430BSVZ-210 D02607-0-9/10

C65 004

Abstract: 476 35k , C6, C7, C9, C11, C13, C14, C15, C16, C19, D5, D6, D7, D9, D11, D13, D19, E3, E19, F19, J3, J4, L3 , logic transformer or description of forward compatibility for VEE and VCC selection. 7 5471C , FPGA 100 nF 10 nF VCC SDAEN Jumper FGPA or µC Output Negative Logic Transformer , Transformer ADC 100 nF VCC 100 nF 10 nF B/GB FGPA or µC Output ADC 100 nF 10 nF , Negative Logic Transformer ADC 100 nF FGPA or µC Output ADC 100 nF 10 nF Note: FPGA
Analog Devices
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AD9430-LVDS/PCB 476 35k dx3 c36 AD8351 217r1 VF561 AD9430-210 AD9430BSVZ-2101 AD9430-CMOS/PCB C02607-0-8/05

DIODE A7N

Abstract: 004B inductors and transformer used with the PWR-TOPXXX are critical to the performance of the circuit. They , E28/11 E30 E22/19/6 E22/19/6 E22/19/6 E28/11 EER28L E19 HORIZ E-16 HORIZ E-16 HORIZ E16 HORIZ E28/11 E19 HORIZ E28/11 E30 E30 E22/19/6 E19 HORIZ E28/11 E-16 HORIZ E-16 HORIZ E22/19/6 EFD25 EPC25 E-16 HORIZ E22/19/6 EEL22 E19 HORIZ E-16 HORIZ E-16 VERT E22/19/6 E28/11 , -16 VERT E22/19/6 E28/11 E22/19/6 EI25 VERT E22/19/6 EI25 VERT E28/11 E30 EER28L E19 HORIZ E22
e2v semiconductors
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AT84AS003CTP AT84AS003VTP AT84AS004CTP AT84AS004VTP 0812D DIODE A7N 004B AT84AS003 diode t25 4 d9 DIODE F22 AT84AS003/004 AT84AS003/004B

transformer e19

Abstract: EL Ei 33 transformer limiting of the input signal. In the double balun and transformer configurations, the value of the , ADA4930-1 For baseband applications where SNR is a key parameter, differential transformer coupling is , VCM voltage can be connected to the center tap of the secondary winding of the transformer. R2 , selecting a transformer. Most RF transformers saturate at frequencies below a few megahertz. Excessive , E15 E16 E17 E18 E19 E0 E1 E2 E3 E4 E5 E6 E7 E8 E9 E0 E1 E2 E3 E4 E5 E6 E7 E8 E9 . .
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EL Ei 33 transformer digital to resolver converter 16-BIT RDC-1920X-30X

AT84AS004CTP

Abstract: diode t25 4 d9 digitized and available at Port A, 14 cycles later in interleaved mode. A wideband transformer, such as
e2v semiconductors
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diode t25 4 B9 a6n 100 E20 L27 B19 transformer diode t25 4 A6 AT84AS004

TSD-825

Abstract: TOP250 requirements and impedance matching are provided. A power transformer transmits energy, transforms voltage , transformer. 1997 Nov 21 Fig.6 Power transformer application. 23 Philips Components Soft , this main inductance. The principal function of the transformer core is to provide optimum coupling between the windings. The general equivalent circuit of a signal transformer is shown in Fig.11. Ring , ferrite. The frequency response of a practical transformer is shown in Fig.12. handbook, halfpage
Premier Magnetics
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POL-12208 POL-15020 POL-30030 TSD-825 TOP250 TOP224 PMCU transformer E28 TOP247 UL1950 CSA-950 E162344 UL1950/IEC950 132KH PWR-TOP226
Abstract: impedance matching are provided. A power transformer transmits energy, transforms voltage to the , .5 Pulse and general purpose transformer. 2002 Feb 01 Fig.6 Power transformer application. 20 , transformer core is to provide optimum coupling between the windings. CBW346 The general equivalent circuit of a signal transformer is shown in Fig.8. The elements of the circuit depicted in Fig.8 may be defined as follows: Fig.8 Simplified equivalent circuit of a transformer. Es = source voltage Rs = Analog Devices
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AD9683 JESD204B 14-BIT MO-220-WHHD-5 08-16-2010-B CP-32-12

dx3 c36

Abstract: dx3 c36 chip % - Transmit Jitter 0 1.4 ns Measured at line side of transformer, line replaced , V Measured at line side of transformer, line replaced by differential resistance of 100 ohms , 36 GND GND 8 35 CAP2 USBD- 9 34 E19/DTRC#/GC3 USBD+ 10 33 , ETH_LINK O Ethernet 10/100 Activity Indicator 34 E19/DTRC#/GC3 I/O Enhanced general , #/GD0 E23/TXC E22/RXC/RWKC# E21/RTSC#/RS485C/GC5 E20/CTSC#/GC4 E19/DTRC#/GC3 E18/DSRC#/GC2 E17
Analog Devices
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dx3 c36 chip dx8 c37 6485 E34 TRANSFORMER 50P4 DA10 AD9430BSVZ-1701 C02607-0-11/04
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